An update to database TraVA: organ-specific cold stress response in Arabidopsis thaliana
Abstract Background Transcriptome map is a powerful tool for a variety of biological studies; transcriptome maps that include different organs, tissues, cells and stages of development are currently available for at least 30 plants. Some of them include samples treated by environmental or biotic str...
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doaj-8d2f152131af4f2bb7a17a40482df17b2020-11-25T01:21:50ZengBMCBMC Plant Biology1471-22292019-02-0119S1294010.1186/s12870-019-1636-yAn update to database TraVA: organ-specific cold stress response in Arabidopsis thalianaAnna V. Klepikova0Ivan V. Kulakovskiy1Artem S. Kasianov2Maria D. Logacheva3Aleksey A. Penin4Institute for Information Transmission Problems of the Russian Academy of SciencesVavilov Institute of General Genetics, Russian Academy of SciencesVavilov Institute of General Genetics, Russian Academy of SciencesInstitute for Information Transmission Problems of the Russian Academy of SciencesInstitute for Information Transmission Problems of the Russian Academy of SciencesAbstract Background Transcriptome map is a powerful tool for a variety of biological studies; transcriptome maps that include different organs, tissues, cells and stages of development are currently available for at least 30 plants. Some of them include samples treated by environmental or biotic stresses. However, most studies explore only limited set of organs and developmental stages (leaves or seedlings). In order to provide broader view of organ-specific strategies of cold stress response we studied expression changes that follow exposure to cold (+ 4 °C) in different aerial parts of plant: cotyledons, hypocotyl, leaves, young flowers, mature flowers and seeds using RNA-seq. Results The results on differential expression in leaves are congruent with current knowledge on stress response pathways, in particular, the role of CBF genes. In other organs, both essence and dynamics of gene expression changes are different. We show the involvement of genes that are confined to narrow expression patterns in non-stress conditions into stress response. In particular, the genes that control cell wall modification in pollen, are activated in leaves. In seeds, predominant pattern is the change of lipid metabolism. Conclusions Stress response is highly organ-specific; different pathways are involved in this process in each type of organs. The results were integrated with previously published transcriptome map of Arabidopsis thaliana and used for an update of a public database TraVa: http://travadb.org/browse/Species=AthStress.http://link.springer.com/article/10.1186/s12870-019-1636-yCold stressArabidopsis thalianaRNA-seqTranscriptome mapOrgan-specific stress response |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Anna V. Klepikova Ivan V. Kulakovskiy Artem S. Kasianov Maria D. Logacheva Aleksey A. Penin |
spellingShingle |
Anna V. Klepikova Ivan V. Kulakovskiy Artem S. Kasianov Maria D. Logacheva Aleksey A. Penin An update to database TraVA: organ-specific cold stress response in Arabidopsis thaliana BMC Plant Biology Cold stress Arabidopsis thaliana RNA-seq Transcriptome map Organ-specific stress response |
author_facet |
Anna V. Klepikova Ivan V. Kulakovskiy Artem S. Kasianov Maria D. Logacheva Aleksey A. Penin |
author_sort |
Anna V. Klepikova |
title |
An update to database TraVA: organ-specific cold stress response in Arabidopsis thaliana |
title_short |
An update to database TraVA: organ-specific cold stress response in Arabidopsis thaliana |
title_full |
An update to database TraVA: organ-specific cold stress response in Arabidopsis thaliana |
title_fullStr |
An update to database TraVA: organ-specific cold stress response in Arabidopsis thaliana |
title_full_unstemmed |
An update to database TraVA: organ-specific cold stress response in Arabidopsis thaliana |
title_sort |
update to database trava: organ-specific cold stress response in arabidopsis thaliana |
publisher |
BMC |
series |
BMC Plant Biology |
issn |
1471-2229 |
publishDate |
2019-02-01 |
description |
Abstract Background Transcriptome map is a powerful tool for a variety of biological studies; transcriptome maps that include different organs, tissues, cells and stages of development are currently available for at least 30 plants. Some of them include samples treated by environmental or biotic stresses. However, most studies explore only limited set of organs and developmental stages (leaves or seedlings). In order to provide broader view of organ-specific strategies of cold stress response we studied expression changes that follow exposure to cold (+ 4 °C) in different aerial parts of plant: cotyledons, hypocotyl, leaves, young flowers, mature flowers and seeds using RNA-seq. Results The results on differential expression in leaves are congruent with current knowledge on stress response pathways, in particular, the role of CBF genes. In other organs, both essence and dynamics of gene expression changes are different. We show the involvement of genes that are confined to narrow expression patterns in non-stress conditions into stress response. In particular, the genes that control cell wall modification in pollen, are activated in leaves. In seeds, predominant pattern is the change of lipid metabolism. Conclusions Stress response is highly organ-specific; different pathways are involved in this process in each type of organs. The results were integrated with previously published transcriptome map of Arabidopsis thaliana and used for an update of a public database TraVa: http://travadb.org/browse/Species=AthStress. |
topic |
Cold stress Arabidopsis thaliana RNA-seq Transcriptome map Organ-specific stress response |
url |
http://link.springer.com/article/10.1186/s12870-019-1636-y |
work_keys_str_mv |
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